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猴子额眼区视觉、预备和扫视活动的手调制。

Hand modulation of visual, preparatory, and saccadic activity in the monkey frontal eye field.

机构信息

Institut de Neurosciences Cognitives de la Méditerranée, UMR 6193, Centre National de la Recherche Scientifique and Aix-Marseille Université, 13402 Marseille, France.

出版信息

Cereb Cortex. 2011 Apr;21(4):853-64. doi: 10.1093/cercor/bhq149. Epub 2010 Aug 16.

Abstract

Behavioral studies have shown that hand position influences saccade characteristics. This study examined the neuronal changes that could underlie this behavioral observation. Single neurons were recorded in the frontal eye field (FEF) of 2 monkeys as they executed a visually guided saccade task, while holding their hand at given locations on a touch screen. The task was performed with the hand either visible or invisible, in order to assess the relative contribution of visual and proprioceptive information on hand position. Among the 224 neurons tested, the visual, saccadic and/or preparatory activity of more than half of them was modulated by hand position, whether the hand was visible or invisible. Comparison of lower (hand's workspace) and upper (out of reach) visual targets showed that hand modulation was predominant in the hand's workspace. Finally, some cells preferred congruency of hand and target in space, others preferred incongruency. Interestingly, hand modulation of saccadic activity correlated with hand position effects on saccade reaction times. We conclude that visual and proprioceptive signals derived from the hand are integrated by FEF neurons. These signals can modulate target selection through attention and allow the oculomotor system to use hand-related somatosensory signals for the initiation of visually guided saccades.

摘要

行为研究表明,手的位置会影响眼跳特征。本研究旨在探究可能导致这一行为观察的神经变化。当两只猴子执行视觉引导的眼跳任务时,我们记录了其额眼区(FEF)中的单个神经元的活动情况,同时猴子的手放在触摸屏上的特定位置。该任务在手可见或不可见的情况下进行,以评估视觉和本体感觉信息在手位置上的相对贡献。在测试的 224 个神经元中,超过一半的神经元的视觉、眼跳和/或预备活动受到手位置的调制,无论手是否可见。与较低(手的工作空间)和较高(够不着)视觉目标的比较表明,手的调制在手的工作空间中占主导地位。最后,一些细胞更喜欢手和目标在空间上的一致,而另一些则更喜欢不一致。有趣的是,眼跳活动的手调制与眼跳反应时间上的手位置效应相关。我们的结论是,来自手的视觉和本体感觉信号由 FEF 神经元整合。这些信号可以通过注意力来调节目标选择,并允许眼动系统利用与手相关的躯体感觉信号来启动视觉引导的眼跳。

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